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رائد فالح حسن - Assist. Prof. Raed Falih Hassan
PhD - assistant professor
College of Science , Department of Chemistry
[email protected]
Summary

Dr. Raed Falih Hassan Fawadi, a dedicated scholar in the field of Analytical Chemistry, embarked on his academic journey with a Bachelor’s degree in Chemistry from the University of Baghdad. His curiosity led him to pursue a Master’s degree, followed by a Ph.D. in the same field. Throughout his career, Dr. Fawadi has not only conducted valuable research but also assumed leadership roles within the academic community. As an Assistant Professor at the University of Baghdad, he has contributed significantly to shaping education. His commitment to excellence is evident during his tenure as the Dean of the College of Science. Dr. Fawadi’s research interests span various topics, from control algorithms to voltage balancing strategies, all of which have left a lasting impact on the scientific community. His leadership roles further underscore his dedication to administrative excellence, emphasizing holistic student development and scientific advancement.

Qualifications

1999-2000 B.Sc. in Chemistry - University of Baghdad/ College of Science/ Department of Chemistry 2008-2009 M.Sc. in Analytical Chemistry - University of Baghdad/ College of Science/ Department of Chemistry 2015-2016 Ph.D. in Analytical Chemistry - University of Baghdad/ College of Science/ Department of Chemistry

Responsibility
  • 2023-2024 The Dean of College of Science / University of Baghdad
  • 2021-2022 Assigned with the duties of Head of the Department of Chemistry (in addition to the Assistant Dean duties) College of Science / University of Baghdad
  • 2021-2022 Assigned with the duties of Assistant Dean for Students' Affairs (in addition to the Assistant Dean duties) College of Science / University of Baghdad
  • 2020-2021 Authorized with the duties of the Dean (in addition to the Assistant Dean duties) College of Science / University of Baghdad
  • 2019-2020 Assistant Dean for Administrative Affairs/ College of Science / University of Baghd2018-2019 Rapporteur of the Evening Undergraduate Studies / Department of Chemistry/ College of Science / University of Baghdadad
  • 2017-2018 Head of the Postgraduate Department / College of Science / University of Baghdad
  • 2017-2018 Head of the Studies, Planning, and Follow-up Department / College of Science / University of Baghdad
  • 2016- 2017 Head of the Registration Department for Morning and Evening undergraduate Studies / College of Science / University of Baghdad.
  • 2011- 2-13 Head of the Registration Department for Morning and Evening Undergraduate Studies / College of Science / University of Baghdad.
Awards and Memberships
  • 2012-2013 Central Examination Committee / College of Science / University of Baghdad
  • 2012-2013 Student Discipline Committee
  • 2017-2018 Central Examination Committee / College of Science / University of Baghdad
  • 2017-2018 Academic Leave Committee / College of Science / University of Baghdad
  • 2018-2019 Academic Leave Committee / College of Science / University of Baghdad
  • 2018-2019 Exam Committee in the Department of Chemistry / College of Science / University of Baghdad
  • 2018-2019 Organizing Committee of the Arabic Language Integrity Festival / College of Science / University of Baghdad
  • 2018-2019 Organizing Committee of the Environmental Protection Festival/ College of Science / University of Baghdad
  • 2019-2020 (to Present) Central Examination Committee / College of Science / University of Baghdad
  • 2019-2020 (to Present) Supervising Committee for Dormitory Students
  • 2020-2021 University of Baghdad Reconstruction Committee
  • 2020-2021 Head of the Committee for the sale and rent of movable and immovable state funds that belongs to the presidency of the University of Baghdad
  • Multiple Auditing and Investigation Committees within the College and the University
Research Interests

Analytical Chemistry

Publication Date
Sun Aug 01 2021
Journal Name
Sensors And Actuators B: Chemical
Sensitive and simple colorimetric methods for visual detection and quantitative determination of semicarbazide in flour products using colorimetric reagents

After baking the flour, azodicarbonamide, an approved food additive, can be converted into carcinogenic semicarbazide hydrochloride (SEM) and biurea in flour products. Thus, determine SEM in commercial bread products is become mandatory and need to be performed. Therefore, two accurate, precision, simple and economics colorimetric methods have been developed for the visual detection and quantitative determination of SEM in commercial flour products. The 1st method is based on the formation of a blue-coloured product with λmax at 690 nm as a result of a reaction between the SEM and potassium ferrocyanide in an acidic medium (pH 6.0). In the 2nd method, a brownish-green colored product is formed due to the reaction between the SEM and phosph

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Publication Date
Fri May 10 2019
Journal Name
Research Journal Of Chemistry And Environment
Solid Phase Extraction of Theophylline in Aqueous Solutions by Modified Magnetic Iron Oxide Nanoparticles as an Extractor Material and Spectrophotometry Technique for the Determination

new, simple and fast solid-phase extraction method for separation and preconcentration of trace theophylline in aqueous solutions was developed using magnetite nanoparticles (MIONPs) coated with aluminium oxide (AMIONPs) and modified with palmitate (P) as an extractor (P@AMIONPs). It has shown that the developed method has a fast absorbent rate of the theophylline at room temperature. The parameters that affect the absorbent of theophylline in the aqueous solutions have been investigated such as the amount of magnetite nanoparticle, pH, standing time and the volume, concentration of desorption solution. The linear range, limit of quantification (LOQ) and limit of detection (LOD) for the determination of theophylline were 0.05-2.450 μg mL-

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Publication Date
Sat Jul 01 2023
Journal Name
Journal Of Analytical Chemistry
A Spectrophotometric Method for Tetracycline Determination in its Bulk Powder and Pharmaceutical Formulations Using Flow Injection and Batch Procedures: a Comparative Study

A reliable and environmental analytical method was developed for the direct determination of tetracycline using flow injection analysis (FIA) and batch procedures with spectrophotometric detection. The developed method is based on the reaction between a chromogenic reagent (vanadium (III) solution) and tetracycline at room temperature and in a neutral medium, resulting in the formation of an intense brown product that shows maximum absorption at 395 nm. The analytical conditions were improved by the application of experimental design. The proposed method was successfully used to analyze samples of commercial medications and verified throughout the concentration ranges of 25–250 and 3–25 µg/mL for both FIA and batch procedures, respecti

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Publication Date
Mon Apr 03 2023
Journal Name
Chemistryselect
Development and Validation of Spectrophotometric Methods for the Quantitative Determination of Doxycycline Hyclate in Pure Form and Pharmaceutical Formulations Using Flow‐Injection and Batch procedures: A Comparative Study
Abstract<p>Doxycycline hyclate is an antibiotic drug with a broad‐spectrum activity against a variety of gram‐positive and gram‐negative bacteria and is frequently used as a pharmacological agent and as an effector molecule in an inducible gene expression system. A sensitive, reliable and fast spectrophotometric method for the determination of doxycycline hyclate in pure and pharmaceutical formulations has been developed using flow injection analysis (FIA) and batch procedures. The proposed method is based on the reaction between the chromogenic reagent (V<sup>4+</sup>) and doxycycline hyclate in a neutral medium, resulting in the formation of a yellow compound that shows maximum absorbance at 3</p> ... Show More
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Publication Date
Fri Nov 20 2015
Journal Name
Iraqi Journal Of Science
New Approach for Determination of Oxonium Ion in Inorganic Acids by Quenched Fluorescence of Analytically Interested Species via the Liberated Bromine Using Continuous Flow Injection Laser Diode Fluorimeter Analyser

A new method is characterized by simplicity, accuracy and speed for determination of Oxonuim ion in ionisable inorganic acid such as hydrochloric (0.1 - 10) ,Sulphuric ( 0.1 - 6 ),nitric ( 0.1 - 10 ), perchloric ( 0.1 - 7 ), acetic (0.1 - 100 ) and phosphoric ( 0.1 - 30 ) ( mMol.L-1 )acids. By continuous flow injection analysis. The proposed method was based on generation of bromine from the Bro-3-Br-- H3O+. Bromine reacts with fluorescein to quenches the fluorescence . A sample volume no.1 (31μl) and no.2 (35μl) were used with flow rate of 0.95 mL.min-1 using H2O line no.1as carrier stream and 1.3 mL.min-1 using fluorescein sodium salt line no.2. Linear regression of the concentration ( mMol.L-1 ) Vs quenched fluorescence gives a correla

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Publication Date
Mon Nov 11 2019
Journal Name
Journal Of Global Pharma Technology
Using the Water Quality Index as a Powerful Tool to Assess the Water Quality for Drinking Purposes in Al-Salam, Western Region of Baghdad City, Iraq

Background: Tap waters play an important role in fulfilling the people needs for drinking and domestic purposes. Contaminate the tap water with different pollutants has become an issue of great concern for 90% of people who are depended on the tap water as the main source of drinking. Pollutants can make their way easily into the delivering pipes which suffer from the leaking resulting in decreasing the quality of water. Objective: Therefore, assess the water quality for drinking purpose by calculating the water quality index is an important tool to ascertain whether the water is suitable for human consumption or not. Methods: In the present work, the water quality of the Al-Salam, western region of Baghdad city, Iraq was investigated for 7

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Publication Date
Tue Nov 19 2024
Journal Name
Kerbala Journal Of Pharmaceutical Sciences
Determination of Methionine Via Chemiluminescence-Continuous Flow Injection Analysis

The research work represent a fast and simple method for the determination of methionine using chemiluminescence for the methionine-sodium hydroxide-luminol for the generation of a chemiluminesecent derivative of luminal. The emission was measured by continuous flow analysis made sample size of 83µL was used.Response versus concentration extended from 0.2-20 mM.L-1 with a percentage linearity of 96.17% or with 99.17% percentage of linearity for the range 0.6-20 mM.L-1. Reaching to a L.O.D. at (S/N=3) for 5 µM.L-1 from the gradual dilution for the minimum concentration in the calibration graph with a repeatability of less than 0.5% (n=10). A comparison was made between the new developed method with the classical method for the spectrophoto

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Publication Date
Tue Jan 01 2019
Journal Name
Research Journal Of Pharmacy And Technology
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Publication Date
Tue May 05 2015
Journal Name
International Journal Of Research In Pharmacy And Chemistry
NEW APPROACH FOR DETERMINATION OF MEBEVERINE BY QUENCHED FLUORESCENCE OF ANALYTICALLY INTERESTED SPECIES USING CONTINUOUS FLOW INJECTION LASER DIODE FLUORIMETER ANALYSER

The proposed method is sensitive, simple , fast for the determination of mebeverine hydrochloride in pure form or in pharmaceutical dosage . Using Homemade instrument fluorimeter continuous flow injection analyser with solid state laser (405 nm) as a source. Where it is based upon the fluorescence of fluorescein sodium salt and quenching effect of fluorescence by mebeverine in aqueous medium. The calibration graph was linear in the concentration range 0.05 to10 mMol.L-1 (r= 0.9629) with relative standard deviation (RSD%) for 1 mMol.L-1mebeverine solution was lower than 3% (n=6). Three pharmaceutical drugs were used as an application for the determination of mebeverine. A comparison was made between the newly developed method of analysis wit

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Publication Date
Fri Jul 01 2022
New Approach for Determination of Ciprofloxacin by Quenched Fluorescence of Analytically Interested Species Using Continuous Flow Injection Laser Diode Fluorimeter Analyser

The objective of this study was to establish an accurate, precise, sensitive, simple, fast and reliable method for the determination of ciprofloxacin hydrochloride in pure or in pharmaceutical dosage forms using Homemade instrument fluorimeter continuous flow injection analyser with solid state laser (405 nm) as a source. The method is based upon the fluorescence fluorescein sodium salt and its quenching by ciprofloxacin hydrochloride in aqueous medium. The solutions of standard and the sample were prepared in distilled water. The calibration graph was linear in the concentration range of using (10 - 100) mMol.L-1 ciprofloxacin hydrochloride (r= 0.9891) with relative standard deviation (RSD%) for 3 mMol.L-1 ciprofloxacin HCl solution is

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